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石胆酸在热量限制条件下延缓酵母时序性衰老的机制。

Mechanisms through which lithocholic acid delays yeast chronological aging under caloric restriction conditions.

作者信息

Arlia-Ciommo Anthony, Leonov Anna, Mohammad Karamat, Beach Adam, Richard Vincent R, Bourque Simon D, Burstein Michelle T, Goldberg Alexander A, Kyryakov Pavlo, Gomez-Perez Alejandra, Koupaki Olivia, Titorenko Vladimir I

机构信息

Department of Biology, Concordia University, Montreal, Quebec, Canada.

出版信息

Oncotarget. 2018 Oct 9;9(79):34945-34971. doi: 10.18632/oncotarget.26188.

Abstract

All presently known geroprotective chemical compounds of plant and microbial origin are caloric restriction mimetics because they can mimic the beneficial lifespan- and healthspan-extending effects of caloric restriction diets without the need to limit calorie supply. We have discovered a geroprotective chemical compound of mammalian origin, a bile acid called lithocholic acid, which can delay chronological aging of the budding yeast under caloric restriction conditions. Here, we investigated mechanisms through which lithocholic acid can delay chronological aging of yeast limited in calorie supply. We provide evidence that lithocholic acid causes a stepwise development and maintenance of an aging-delaying cellular pattern throughout the entire chronological lifespan of yeast cultured under caloric restriction conditions. We show that lithocholic acid stimulates the aging-delaying cellular pattern and preserves such pattern because it specifically modulates the spatiotemporal dynamics of a complex cellular network. We demonstrate that this cellular network integrates certain pathways of lipid and carbohydrate metabolism, some intercompartmental communications, mitochondrial morphology and functionality, and liponecrotic and apoptotic modes of aging-associated cell death. Our findings indicate that lithocholic acid prolongs longevity of chronologically aging yeast because it decreases the risk of aging-associated cell death, thus increasing the chance of elderly cells to survive.

摘要

目前已知的所有植物和微生物来源的老年保护化合物都是热量限制模拟物,因为它们可以模拟热量限制饮食对寿命和健康寿命延长的有益作用,而无需限制热量供应。我们发现了一种哺乳动物来源的老年保护化合物,一种叫做石胆酸的胆汁酸,它可以在热量限制条件下延缓出芽酵母的时序衰老。在这里,我们研究了石胆酸能够延缓热量供应受限的酵母时序衰老的机制。我们提供的证据表明,石胆酸在热量限制条件下培养的酵母的整个时序寿命中,会引发并维持一种延缓衰老的细胞模式。我们表明,石胆酸刺激这种延缓衰老的细胞模式并维持这种模式,因为它特异性地调节了一个复杂细胞网络的时空动态。我们证明,这个细胞网络整合了脂质和碳水化合物代谢的某些途径、一些细胞间通讯、线粒体形态和功能,以及衰老相关细胞死亡的脂肪坏死和凋亡模式。我们的研究结果表明,石胆酸延长了时序衰老酵母的寿命,因为它降低了衰老相关细胞死亡的风险,从而增加了老年细胞存活的机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3dbb/6201858/5f5e33d3cf0d/oncotarget-09-34945-g001.jpg

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